Cho Kyung-Hyun, Lee Sang Hyuk, Lee Yunki, Bahuguna Ashutosh, Kim Ji-Eun, Djayanti Krismala, Jeon Cheolmin
Raydel Research Institute, Medical Innovation Complex, Daegu 41061, Republic of Korea.
Pharmaceuticals (Basel). 2025 Jun 9;18(6):860. doi: 10.3390/ph18060860.
: This study aimed to explore the therapeutic potential of a dietary regimen of banaba leaf extract (BNB), policosanol (PCO, Raydel), and their combination (BNB+PCO), to mitigate high cholesterol (HC) and high galactose (HG) diet-induced dyslipidemia, hyperglycemia, oxidative stress, senescence, and organ damage in zebrafish (). : Zebrafish ( = 28/group) were fed with HC (4% /)+HG (30% /) or HC+HG supplemented either with BNB (0.1% /) or PCO (0.1% /) or BNB+PCO (0.1% / each). Following 6 weeks of dietary intervention, biochemical and histopathological examinations across the groups were performed. : Post 6 weeks of consumption, the BNB+PCO group exhibited a significant 40% decrease in body weight (BW) relative to the BW of the HC+HG group, while the BNB or PCO groups displayed nonsignificant changes in BW. Both BNB and PCO reduced HC+HG-induced dyslipidemia and hyperglycemia; however, co-administration (BNB+PCO) demonstrated a significantly greater therapeutic effect in countering these conditions compared to either BNB or PCO alone. A similar effect of the BNB+PCO combination was observed on the elevation of plasma sulfhydryl content, paraoxonase (PON), and ferric ion reduction activity (FRA), with notably ~1.2-times ( < 0.01) higher levels compared to their corresponding values observed in the BNB or PCO groups. Significantly diminished plasma AST, ALT, hepatic interleukin 6 (IL-6) levels, and fatty liver changes were observed in response to BNB+PCO, compared to either BNB or PCO alone. Also, BNB+PCO displayed a higher curative effect against HC+HG-induced impairment of tissue regeneration than BNB or PCO alone. A notable effect of BNB+PCO was perceived in protecting kidneys, testis, and ovary damage. Consistently, BNB+PCO showed a profound impact on mitigating HC+HG elevated reactive oxygen species (ROS) generation, apoptosis, cellular senescence, and accumulation of brain-binding lipid proteins (BLBPs) and 4-hydroxynoneal (4-HNE) in the brain. : The findings highlight the synergistic effects of the BNB and PCO combination to mitigate the adversity posed by the consumption of the HC+HG diet.
本研究旨在探索巴拿巴叶提取物(BNB)、 policosanol(PCO,Raydel)及其组合(BNB+PCO)饮食方案减轻高胆固醇(HC)和高半乳糖(HG)饮食诱导的斑马鱼血脂异常、高血糖、氧化应激、衰老及器官损伤的治疗潜力。
斑马鱼(每组28条)喂食HC(4%/)+HG(30%/)或添加BNB(0.1%/)或PCO(0.1%/)或BNB+PCO(各0.1%/)的HC+HG饲料。经过6周的饮食干预后,对各实验组进行生化和组织病理学检查。
食用6周后,相对于HC+HG组的体重(BW),BNB+PCO组体重显著下降40%,而BNB或PCO组体重无显著变化。BNB和PCO均可减轻HC+HG诱导的血脂异常和高血糖;然而,联合给药(BNB+PCO)在对抗这些情况方面比单独使用BNB或PCO显示出显著更大的治疗效果。在血浆巯基含量、对氧磷酶(PON)和铁离子还原活性(FRA)升高方面观察到BNB+PCO组合有类似效果,其水平比BNB或PCO组相应值高约1.2倍(P<0.01)。与单独使用BNB或PCO相比,BNB+PCO可显著降低血浆AST、ALT、肝脏白细胞介素6(IL-6)水平,并减轻脂肪肝变化。此外,BNB+PCO对HC+HG诱导的组织再生损伤的治疗效果高于单独使用BNB或PCO。在保护肾脏、睾丸和卵巢损伤方面观察到BNB+PCO有显著效果。一致地,BNB+PCO在减轻HC+HG升高的活性氧(ROS)生成、细胞凋亡、细胞衰老以及脑结合脂质蛋白(BLBPs)和4-羟基壬烯醛(4-HNE)在脑中的积累方面有深远影响。
研究结果突出了BNB和PCO组合减轻HC+HG饮食带来的不利影响的协同作用。